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Cover crop effects on crop yields and soil organic carbon content.

机译:涵盖农作物对农作物产量和土壤有机碳含量的影响。

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An 8-year cover crop study was conducted in southern Illinois to evaluate the effects of conservation tillage systems on corn and soybean yields and for the maintenance and restoration of soil organic carbon (SOC) and soil productivity of previously eroded soils. In 2001, the no-till (NT), chisel plow, and moldboard plow (MP) treatment plots, which were replicated six times in a Latin square design, were split (with cover crop and without) on sloping, moderately well-drained, moderately eroded soil. The average corn and average soybean yields were similar for NT, chisel plow, and MP systems with and without cover crops. By 2009, the tillage zone, subsoil, and rooting zone of all treatments had similar SOC on a volume basis for the cover crop treatments as for the same tillage treatment without a cover crop. However, using the baseline 2000 SOC contents only, the NT with cover crops maintained most of the SOC levels in the topsoil and subsoil during the 8-year study, when the sediment was high in SOC and retained in the upland landscape by soil conservation practices, including border and filter strips and sod waterways adjacent to the plots, with and without cover crops. Soil carbon creation retention in the upland landscape was greatest for the MP treatments when sediments were retained by the soil conservation practices, which should reduce soil erosion and sediment rich in SOC being transported by overland flow into water and the eventual release of methane and carbon dioxide to the atmosphere.
机译:在伊利诺伊州南部进行了为期8年的覆盖作物研究,以评估保护性耕作制度对玉米和大豆产量的影响,以及对先前侵蚀土壤的土壤有机碳(SOC)和土壤生产力的维持和恢复。在2001年,以倾斜的,排水良好的倾斜方式(在没有覆盖作物的情况下)分割了(免耕地),凿子犁和mold土犁(MP)处理地(在拉丁方设计中重复了6次) ,中等侵蚀的土壤。不论有无遮盖作物的NT,凿犁和MP系统,玉米和大豆的平均产量均相似。到2009年,所有处理的耕作区,下层土壤和生根区的覆盖SOC处理量与无覆盖作物的相同耕作处理的SOC相似。但是,仅使用基线2000 SOC含量,在8年的研究中,覆盖作物的NT保持了表层土壤和下层土壤的大部分SOC水平,此时沉积物的SOC较高,并且通过水土保持措施保留在山地景观中,包括毗邻地块的边界和滤条以及草皮水道,有无作物。当通过土壤保持措施保留沉积物时,对于MP处理而言,高地景观中土壤碳的生成保留最大,这应减少土壤侵蚀和富含SOC的沉积物,这些沉积物通过陆上水流输送到水中以及最终释放甲烷和二氧化碳大气。

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